镧系元素
荧光
材料科学
连接器
离子
傅里叶变换红外光谱
密度泛函理论
纳米技术
红外线的
光电子学
分子
原位
发射光谱
光化学
发光
荧光蛋白
镝
光子上转换
近红外光谱
化学物理
分子动力学
傅里叶变换
作者
Jiawei Ma,Y. R. Wang,Miaomiao Wu,Bocong Li,Fan Ji,Zheng Li,Jian Su,Xinyi Yang,Bo Zou,Gen Zhang
摘要
ABSTRACT The construction of a switchable fluorescent platform with precisely defined sites that can respond to quantitative stimuli remains a challenge. Herein, we proposed two different pressure‐switchable lanthanide metal‐organic frameworks (Ln‐MOFs) platforms by introducing a three‐dimensional flexible “saddle‐shaped” cyclooctatetrathiophene unit and Tb 3+ ions with distinct coordination environments. The dynamic fluorescent behaviors of these two MOFs are strongly related to the molecular geometry of the cyclooctatetrathiophene unit. Specifically, Tb‐MOF‐1 exhibits a completely reversible response between the green emission (located at 527 nm) at 1 atm and red emission (located at 676 nm) at 14.4 GPa. For Tb‐MOF‐2, it exhibits an irreversible response among the green emission (located at 549 nm) at 1 atm, red emission (located at 616 nm) at 7.9 GPa, subsequent white emission at 13.5 GPa, and an enhanced white emission at ambient conditions after the pressure‐release treatment. Both mechanisms of the dynamic behaviors are evidenced by the single‐crystal structural analysis, in situ Fourier transform infrared spectra, in situ angle‐dispersive X‐ray diffraction, and density functional theory calculations. We demonstrate that the precise assembly of a flexible three‐dimensional linker in an ordered framework can serve as a potential strategy for the construction of a smart fluorescent material.
科研通智能强力驱动
Strongly Powered by AbleSci AI